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在一种新型准静态测试装置中,椎弓根螺钉位置不当会影响生物力学稳定性吗?

Does Malpositioning of Pedicle Screws Affect Biomechanical Stability in a Novel Quasistatic Test Setup?

作者信息

Schleifenbaum Stefan, Metzner Florian, Schultze Janine, Kurz Sascha, Heyde Christoph-Eckhard, Pieroh Philipp

机构信息

ZESBO-Center for Research on Musculoskeletal Systems, Semmelweisstraße 14, 04103 Leipzig, Germany.

Department of Orthopedic, Trauma, and Plastic Surgery, University of Leipzig, Liebigstraße 20, 04103 Leipzig, Germany.

出版信息

Bioengineering (Basel). 2025 Jul 18;12(7):781. doi: 10.3390/bioengineering12070781.

Abstract

Pedicle screw fixation is a common spinal surgery technique, but concerns remain about stability when screws are malpositioned. Traditional in vitro pull-out tests assess anchorage but lack physiological accuracy. This study examined the stability of correctly placed and intentionally malpositioned pedicle screws on forty vertebrae from five cadavers. Optimal screw paths were planned via CT scans and applied using 3D-printed guides. Four malposition types-medial, lateral, superior, and superior-lateral-were created by shifting the original trajectory. A custom setup applied three consecutive cycles of tensile and compressive load from 50 N to 200 N. Screw inclination under load was measured with a 3D optical system. The results showed increasing screw inclination with higher forces, reaching about 1° at 50 N and 2° at 100 N, similar in both load directions. Significant differences in inclination were only found at 100 N tensile load, where malpositioned screws showed a lower inclination. Overall, malpositioning had no major effect on screw loosening. These findings suggest that minor deviations in screw placement do not significantly compromise mechanical stability. Clinically, the main concern with malpositioning lies in the potential for injury to nearby structures rather than reduced screw fixation strength.

摘要

椎弓根螺钉固定是一种常见的脊柱外科手术技术,但当螺钉位置不当,其稳定性仍令人担忧。传统的体外拔出试验可评估锚固力,但缺乏生理准确性。本研究检测了五具尸体的四十块椎骨上正确放置和故意放置不当的椎弓根螺钉的稳定性。通过CT扫描规划最佳螺钉路径,并使用3D打印导向器进行操作。通过改变原始轨迹,制造出四种位置不当类型——内侧、外侧、上方和上外侧。一种定制装置施加了三个连续的从50 N到200 N的拉伸和压缩载荷循环。用3D光学系统测量载荷下的螺钉倾斜度。结果显示,随着力的增加,螺钉倾斜度增大,在50 N时达到约1°,在100 N时达到2°,两个载荷方向相似。仅在100 N拉伸载荷下发现倾斜度有显著差异,此时位置不当的螺钉倾斜度较低。总体而言,位置不当对螺钉松动没有重大影响。这些发现表明,螺钉放置的微小偏差不会显著影响机械稳定性。临床上,位置不当的主要问题在于可能损伤附近结构,而非螺钉固定强度降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d64/12292583/dd1ba60e3f87/bioengineering-12-00781-g001.jpg

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